Publication
Title
Controlled growth of hexagonal gold nanostructures during thermally induced self-assembling on Ge(001) surface
Author
Abstract
Nano-sized gold has become an important material in various fields of science and technology, where control over the size and crystallography is desired to tailor the functionality. Gold crystallizes in the face-centered cubic (fcc) phase, and its hexagonal closed packed (hcp) structure is a very unusual and rare phase. Stable Au hcp phase has been reported to form in nanoparticles at the tips of some Ge nanowires. It has also recently been synthesized in the form of thin graphene-supported sheets which are unstable under electron beam irradiation. Here, we show that stable hcp Au 3D nanostructures with well-defined crystallographic orientation and size can be systematically created in a process of thermally induced self-assembly of thin Au layer on Ge(001) monocrystal. The Au hcp crystallite is present in each Au nanostructure and has been characterized by different electron microscopy techniques. We report that a careful heat treatment above the eutectic melting temperature and a controlled cooling is required to form the hcp phase of Au on a Ge single crystal. This new method gives scientific prospects to obtain stable Au hcp phase for future applications in a rather simple manner as well as redefine the phase diagram of Gold with Germanium.
Language
English
Source (journal)
Scientific reports. - London, 2011, currens
Publication
London : Nature Publishing Group , 2017
ISSN
2045-2322
DOI
10.1038/SREP42420
Volume/pages
7 (2017) , p. 1-9
Article Reference
42420
ISI
000393940700001
Medium
E-only publicatie
Full text (Publisher's DOI)
Full text (open access)
UAntwerpen
Faculty/Department
Research group
Project info
Exploring electron vortex beams (VORTEX).
3D picometrology : new routes to explore the atomic arrangement using state-of-the-art electron microscopy
Bringing light atoms to light: precise characterization of light-atom nanostructures using transmission electron microscopy.
Complex hetero-nanosystems: three-dimensional characterisation down to the atomic scale.
ESTEEM 2 - Enabling science and technology through European electron microscopy.
Publication type
Subject
Affiliation
Publications with a UAntwerp address
External links
Web of Science
Record
Identifier
Creation 01.03.2017
Last edited 09.10.2023
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